Area of research
Materials Chemistry · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Carbon Nanotubes in Composites, Graphene research and applications, Mechanical and Optical Resonators, and Quantum and electron transport phenomena.
Light-harvesting microelectronic devices for wireless electrosynthesis
Magnetically programmed diffractive robotics
Electronically configurable microscopic metasheet robots
Cilia metasurfaces for electronically programmable microfluidic manipulation
Microscopic robots with onboard digital control
Micrometer-sized electrically programmable shape-memory actuators for low-power microrobotics
Electronically integrated, mass-manufactured, microscopic robots
Microscopic sensors using optical wireless integrated circuits
Magnetic field detection limits for ultraclean graphene Hall sensors
Real-time vibrations of a carbon nanotube
Magnetic handshake materials as a scale-invariant platform for programmed self-assembly
Capillary Origami with Atomically Thin Membranes
Atomic Layer Deposition for Membranes, Metamaterials, and Mechanisms
Graphene-based bimorphs for micron-sized, autonomous origami machines
A 250 <italic>μ</italic>m × 57 <italic>μ</italic>m Microscale Opto-electronically Transduced Electrodes (MOTEs) for Neural Recording
Tunable excitons in bilayer graphene
Tunable phonon-cavity coupling in graphene membranes
The valley Hall effect in MoS <sub>2</sub> transistors
Strain solitons and topological defects in bilayer graphene
Nanotools for Neuroscience and Brain Activity Mapping
Imaging Atomic Rearrangements in Two-Dimensional Silica Glass: Watching Silica’s Dance
Stacking Order Dependent Second Harmonic Generation and Topological Defects in <i>h</i>-BN Bilayers
Observation and spectroscopy of a two-electron Wigner molecule in an ultraclean carbon nanotube
Graphene as a protein crystal mounting material to reduce background scatter
Synchronization of Micromechanical Oscillators Using Light
Photocurrent measurements of supercollision cooling in graphene
Photothermal Self-Oscillation and Laser Cooling of Graphene Optomechanical Systems
Fluctuation broadening in carbon nanotube resonators
I-Corps: Microscopic ID tags using optical wireless integrated circuit technologies
DMREF/Collaborative Research: Graphene Based Origami and Kirigami Metamaterials
Collaborative Research: BRAIN EAGER: Stretchable graphene transistors for high signal, high channel count neural recording
Collaborative Research: Exploration of the Nonlinear Dynamics of NEMS Carbon Nanotube Resonators
2005 Condensed Matter Physics Gordon Conference; New London, CT; June 19-24, 2005